Local heat-transfer coefficients and static pressures for condensation of high-velocity steam within a tube
Local heat transfer and static pressure data for steam condensation in vertical downflow tube
Engineering topics
Publications and source records attributed to Dorsch, R. G..
Local heat transfer and static pressure data for steam condensation in vertical downflow tube
Frequency response measured in experiments with pump-fed single tube heat exchanger boiler using Freon and water
Frequency response analysis for forced flow single tube boiler containing Freon
Heat transfer coefficients of steam condensation in vertical downflow with liquid-vapor interface inside small tube-type condenser
Ion bundles produced in a pulse-excited corona discharge are used as tracers with a radar-like pulse transit-time measuring instrument in order to provide a measurement of airspeed that is independent of all variables except time and distance. The resulting instrumentation need not project into the air stream and, therefore, will not cause any interference in supersonic flow. The instrument was tested at Mach numbers ranging from 0.3 to 3.8. Use of the proper instrumentation and technique results in accuracy of the order of 1 percent.
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A photomicrographic technique for investigating eupercooled. water droplets has been devised and. used. to determine the spontaneous freezing temperatures of eupercooled. water droplets of the size ordinarily found. in the atmosphere. The freezing temperatures of 4527 droplets ranging from 8.75 to 1000 microns in diameter supported on a platinum surface and 571 droplets supported on copper were obtained. The average spontaneous freezing temperature decreased with decrease in the size of the droplets. The effect of size on the spontaneous freezing temperature was particularly marked below 60 microns. Frequency-distribution curves of the spontaneous freezing temperatures observed for droplets of a given size were obtained. Although no droplet froze at a temperature above 20 0 F, all droplets melted at 32 F. Results obtained with a copper support did not differ essentially from those obtained with a platinum surface.